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Securing the Sky: Integrated Satellite-UAV Physical Layer Security for Low-Altitude Wireless Networks

  • Jiahui Li
  • , Geng Sun*
  • , Xiaoyu Sun
  • , Fang Mei*
  • , Jingjing Wang
  • , Xiangwang Hou
  • , Daxin Tian
  • , Victor C.M. Leung
  • *Corresponding author for this work
  • College of Computer Science and Technology
  • Jilin University
  • Nanyang Technological University
  • Beihang University
  • Tsinghua University
  • Zhongguancun Laboratory
  • Shenzhen University
  • University of British Columbia

Research output: Contribution to journalArticlepeer-review

Abstract

Low-altitude wireless networks (LAWNs) have garnered significant attention in the forthcoming 6G networks. In LAWNs, satellites with wide coverage and unmanned aerial vehicles (UAVs) with flexible mobility can complement each other to form integrated satellite-UAV networks, thereby providing ubiquitous and high-speed connectivity for low-altitude operations. However, the higher line-of-sight probability in low-altitude airspace increases transmission security concerns. In this work, we present a collaborative beamforming-based physical layer security scheme for LAWNs. We introduce the fundamental aspects of integrated satellite-UAV networks, physical layer security, UAV swarms, and collaborative beamforming for LAWN applications. Following this, we highlight several opportunities for collaborative UAV swarm secure applications enabled by satellite networks, including achieving physical layer security in scenarios involving data dissemination, data relay, eavesdropper collusion, and imperfect eavesdropper information. Next, we detail two case studies, i.e., a secure relay system and a two-way aerial secure communication framework specifically designed for LAWN environments. Simulation results demonstrate that these physical layer security schemes are effective and beneficial for secure low-altitude wireless communications. A practicality analysis shows that the proposed method is applicable to LAWN scenarios. Finally, we discuss current challenges and future research directions for enhancing security in LAWNs.

Original languageEnglish
Pages (from-to)106-115
Number of pages10
JournalIEEE Wireless Communications
Volume33
Issue number1
DOIs
StatePublished - Feb 2026

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